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    • 2. 发明专利
    • CORNER FRAMEWORK STRUCTURE OF TEMPORARY SCAFFOLD
    • JP2000064593A
    • 2000-02-29
    • JP25749698
    • 1998-08-26
    • NISHI NIPPON PLANT KOGYO KK
    • IWAI SATOSHI
    • E04G1/14
    • PROBLEM TO BE SOLVED: To provide the corner framework structure of a temporary scaffold, in which come-and-go among temporary scaffolds can be conducted smoothly and surely. SOLUTION: The corner framework structure of the temporary scaffold consists of a central support 2, from which a horizontal connecting rod 21 is projected, first frame bodies 3, in which scaffold-frame supporting levers 32 are projected from column bases 31, and a second frame body 4, in which left column bases 41 are fixed integrally by connecting rods 42, the first frame bodies 3 are arranged to the left and the right of the central support 2 and the scaffold-frame supporting levers 32 are coupled detachably to the central support 2 while the second frame body 4 is disposed in upright in front of the central support 2, and the horizontal connecting rod 21 of the central support 2 is joined with the second frame body 4. Since the left-right column bases 41 of the second frame body 4 and the column bases 31 of the first frame bodies 3 oppositely faced to these left-right column bases 41 are connected by connecting members 5, the temporary scaffolds built along each of mutually orthogonal wall surfaces are coupled mutually, and smooth operation can be conducted in the temporary scaffolds.
    • 5. 发明专利
    • HYDRAULIC DEVICE
    • JPH09267993A
    • 1997-10-14
    • JP7674996
    • 1996-03-29
    • NISHI NIPPON PLANT KOGYO KK
    • IKEDA MORIOFUKUSHIMA SHINJI
    • B66F3/46
    • PROBLEM TO BE SOLVED: To synchronously drive each independent control jack with each other even in the case of using plural independent control jacks by providing a booster, of which high-pressure side is connected to a hydraulic jack through a pipe and of which low-pressure side is connected to a hydraulic pump through a pair of pipes. SOLUTION: In a booster 4, an inner piston 7 is operated upward, and the oil, which is filled in a part P2 of a secondary side cylinder 6, is supplied as super high-pressure oil to a hydraulic jack 14 so as to project a piston 15. At this stage, the oil to be supplied to the hydraulic jack 14 is boosted up by the booster 4, and the supplied variable of the oil is accurately controlled. Furthermore, since quantity of the oil inside of the hydraulic jack 14 is controlled by the secondary side cylinder 6 and quantity of the oil of the secondary side cylinder 6 is accurately controlled by the fed variable of the oil of the hydraulic pump 2, lowering speed of the hydraulic jack 14 is accurately controlled. With this structure, even in the case of using plural independent control jacks, jack- down of the hydraulic jacks can be synchronized.
    • 9. 发明专利
    • Booster cylinder
    • 升降缸
    • JP2003056503A
    • 2003-02-26
    • JP2001249547
    • 2001-08-20
    • Nishi Nippon Plant Kogyo Kk西日本プラント工業株式会社
    • IKEDA MORIO
    • F15B3/00
    • PROBLEM TO BE SOLVED: To provide a small booster cylinder capable of passing an operation axis tool for liquid flow or through a through-hole that passes through a piston rod.
      SOLUTION: The booster cylinder comprises a primary-side piston 3a moved by a hydraulic liquid flowing into a primary-side cylinder 1a, a secondary-side piston 3b having a cross section smaller than the primary-side piston 3a and integrally and movably formed with the piston 3a, an output piston 4 moving in a secondary-side cylinder 1b, a booster chamber 9 sealed with liquid and formed with the secondary-side opposed-piston 3b and the output piston 4 with its pressure being increased by the internal movement of the secondary-side piston 3b, and a rod, with a through-hole 6a passing through the axial center, passing through the primary-side piston, rod of the secondary-side piston, output piston, and axial center of flanges at both ends of the cylinder.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供能够使用于液体流动的操作轴工具或通过活塞杆的通孔的小型助力缸。 解决方案:助力缸包括由流入初级侧缸1a的液压液体移动的初级侧活塞3a,具有小于初级侧活塞3a的横截面的次级侧活塞3b,并且整体地且可移动地形成有 活塞3a,在次级侧气缸1b中移动的输出活塞4,用液体密封并形成有二次侧相对活塞3b和输出活塞4的增压室9,其压力由于内部运动而增加 次级侧活塞3b和杆,其中通孔6a穿过轴向中心,穿过次级侧活塞的一次侧活塞杆,输出活塞和两端的凸缘轴向中心 的气缸。